[0001] The object of the present invention is a device for pouring in or pouring out a liquid
and particularly for filling or emptying liquid, said device is provided with a valve
for manual actuating of a flow, especially using only one hand, from the installation
terminated with flexible pipe or hose, in particular for dispensing, filling and/or
emptying liquid into and/or from containers, including storage containers, especially
when using flexible pipe or hose, the device providing ergonomic setting of the open
valve position with the optional possibility of easy to handle locking thereof in
the open flow position and releasing it from this position to the closed position
using only one hand.
BACKGROUND ART
[0002] There are known manual devices provided with valves for dispensing water or other
different liquids from larger containers or from supplying installations, for example
from water installations, which devices are installed at one end of the flexible pipe,
typically a flexible hose, the other end of which is connected to the emptied container
or to said installation.
[0003] Such manually operated devices for pouring in, for example are widely used for irrigation
of plants in horticulture and they are generally provided with a hand grip being provided
with a port or connection for supplying a liquid at one side and a dispensing nozzle
at the other side, and also with the button similar to a gun trigger for closing and
opening of the flow. Typically, this type of pistol type devices are provided with
a valve openable with the trigger button which, when pressed with a hand, opens the
dispensing valve. However, in order to lock the valve in the open position or to unlock
it from the open position it is necessary to use a second hand. Additionally such
constructions are quite complicated to manufacture and typically have a relatively
large size.
[0004] One of the known solutions relatively convenient for being operated with one hand
is the One Touch Shower & Stream type device of Dramm Corporation intended for connection
to a flexible pipe and provided with a slide valve and an adjustable nozzle. Both
opening and closing of the slide valve and also an adjustment of its opening degree
is performed by moving the operating slider by means of simple movement of the thumb
on the upper side of the device housing made of a plastic material, which housing
is in the form of a comfortable hand grip. The drawback in operating the device using
only one hand results from the fact that it requires performing two movements of the
thumb, the first one - repulsive movement, pushing the slider away and the second
one - pulling movement, pulling the slider towards oneself. While the pressure of
the thumb in the direction of a pulling movement is natural and effortless movement,
the pushing movement in the opposite direction is not very ergonomic and requires
more concentration and effort. A similar device has launched Gardena Company. Opening
and closing of the flow is performed by moving the lever with the thumb in the right
direction.
[0005] It is known from
EP0803235 one-piece valve for urostomy pouches, that is simple to manufacture and user-friendly
when operated with one hand, said valve made of natural rubber or flexible plastic,
and consisting of a substantially flat base, which is adhesively attached to a wall
of an urostomy pouch, having a liquid inlet opening and an outlet nozzle and with
a protruding wall extending at a distance from the peripheral edge, wherein the base
has a resiliently deformable cover, snap-fixed on a protruding wall, said cover is
provided on its internal side with a protruding portion, preferably perpendicular
to the base, constituting the button and with a centrally disposed plug at the side
facing the base and projecting towards the liquid inlet opening, tightly closing this
opening. The protruding portion of the cover can be pushed towards the base in order
to remove the plug from the liquid inlet opening and to open this liquid inlet opening
allowing fluid to flow out through the disposing nozzle. After repeated pressing the
button the plug of the resilient cover closes tightly the inlet opening of the base.
Such a type of valve for urostomy pouch can be operated with one finger, but it is
only suitable for use when mounted on a wall of the pouch, as it does not constitute
a stand-alone device in use.
[0006] Utility Model
CN 201091743 discloses a valve for draining liquid from the drainage bag for medical use, which
valve is provided with a liquid inlet at one end and a liquid outlet at the other
end, while in the middle portion of the valve body a transverse tube is arranged which
is embedded in the valve body and traversing its cross-section in such a manner, that
the inner space of the transverse tube is in flow communication with the inlet and
outlet and accommodates a sliding plunger, dimensionally adapted to its shape. The
sliding plunger has a circular groove shaped in accordance with the valve inlet and
outlet, wherein when pressing the plunger towards one end, the sliding circular groove
opens a fluid connection between the valve inlet and outlet, while when the plunger
slides in the second direction the connection between the inlet and the outlet becomes
closed. The valve can be operated with one hand, wherein it is gripped with the index
and middle finger, and the sliding plunger is slid with the thumb to open and close
the valve in the suitable opposite directions, there is also no possibility to block
the valve in the open position.
The task and purpose of the invention
[0008] There is a need for further improvements of the structure of the filling devices,
in particular provided with a valve for emptying containers or for filling/ emptying
liquid, which would be autonomous devices, ensuring the possibility to be used in
a wide range for pouring in/pouring out liquids, dispensing liquids and for filling
and emptying containers of various kinds, or for feeding smaller containers from collective
packaging or from installation terminated with a flexible conduit, preferably a hose,
with the possibility to effort-free and ergonomic operating them with one hand.
[0009] This task is solved according to the invention by a valve type structure of a device
for filling or emptying according to the attached claims, in which device the flow
opening and closing operation is carried out by means of one finger with the use of
a movement in one and the same direction, which direction is the direction of pushing
a button with the thumb and in which device additionally optional capability for automatically
locking the device in the open flow position and in the closed flow position is provided,
as well as also releasing the lock by means of the same movement in one direction,
without the need for additional movements and manipulation.
[0010] The pouring device according to the invention is very ergonomic to operate because
a simple pushing movement is required for opening the valve of the device and starting
the flow, while releasing pressure is sufficient for closing the flow. In the optional
version there is possibility to lock the device in the open position, while for its
releasing and closing flow it is sufficient to press again a button with the thumb,
similar to turn on and off the ball pen, which movement is natural motion, not requiring
effort and convenient even for people with limited manual activity, including for
people with disabilities.
[0011] The solution according to the invention in a preferred, first embodiment ensures
opening the pouring device for filling, i.e. opening the flow of liquid, and especially
its valve, only when the button is pressed, wherein after releasing the button the
device returns to the closed position or in an optional second embodiment it is retracted
and locked in the closed position after the button is pressed again to release the
lock of the open flow position, i.e. of the pressed button.
[0012] The present invention allows for easy to operate dispensing of a liquid, even with
an accuracy of individual droplets with the proposed valve-type pouring device for
filling or discharging liquid which is rearranged to the open flow position by exerting
only a light pressure (pushing), preferably with the thumb, on the push-button member,
in the axial direction from the outlet of the device in the direction towards the
liquid inlet, to which the feeding of the dispensed liquid is connected, preferably
a liquid supplying stub pipe, wherein the same axial pressing which causes axial displacement
of the push-member in the direction towards the inlet, in an optional embodiment,
also causes blocking and positioning of the device in the open position, while the
next pressing on the push-member in the same axial direction towards the inlet in
optional embodiment causes releasing of the locking mechanism and automatic returning
of the device to the closed flow position.
[0013] The device according to the invention is operated at low supply pressures, particularly
at pressures typical for water-pipe supply network or lower pressures.
[0014] The device according to the invention is suitable in addition for using as a standard
hose dispensing nozzle, particularly preferably for use to pouring in and filling
and dispensing liquid from the doypack type package. Additionally, a dispensing nozzle
provided with a thread, bayonet mechanism or the like mechanism may be located at
the outlet end of the device for attachment of extra fittings or dispensing nozzles.
[0015] Furthermore, the push-button can be provided with grooves or another notches or protruding
bulges to facilitate its manual sliding, which are preferably arranged transversely,
and at least one of said push-button surfaces is oriented at an angle, preferably
oblique or perpendicular to the shifting direction, that is the direction of pushing
the button during opening and closing of the flow through the device.
[0016] The device according to the invention ensures an excellent leakage tightness of connections
and a high operation reliability both during flow opening and its blocking in the
flow opening and closing positions and in the closed position.
[0017] The tightness of the device according to the invention is improved in comparison
to known pouring devices for filling and dispensing liquids, which typically have
a structure of the releasing means, i.e. flow opening means acting on a lever mechanism
principle, i.e. performing rotary-tilting motion, which mechanism is difficult to
seal. In the device according to the invention the releasing means has the structure
acting on a principle of sliding motion (reciprocating), which is easier to be effectively
sealed.
Summary of the Invention
[0018] A pouring device for filling or discharging liquids according to the invention comprises
an elongated body, preferably cylindrical, at one end terminated with a tip for a
supply stub pipe, which is forming the liquid inlet and defining an inlet end of the
device, a closure sleeve, which is arranged co-axially relative to the device body
and is supported axially on the main sleeve in such manner that it surrounds the latter
with a clearance, wherein the main sleeve is slidable relative to the closure sleeve
and the device body and it comprises an outlet end at its side remote from the device
body and an inlet end at the side directed to the device body, facing towards the
liquid inlet, wherein the main sleeve has on its side surface, at the side of its
inlet end, at least one, and preferably at least two, outflow openings or more outflow
openings, and further a circumferential groove with the gasket is provided around
the side surface of the main sleeve, while a member for activating and shutting off
the liquid outflow from the pouring device is located at the outlet discharging end
of the device.
[0019] According to the invention the device is characterized in that the member for activating
the flow has a form of a pressing button in the form of the push-button located on
the main tube at its outlet end side, the button is non-rotatably mounted thereon,
and between the main sleeve and the closure sleeve the sealing, preferably in the
form of a rolling diaphragm, as well as helical spring of the button are arranged,
wherein the device is transposed to the open flow position by exerting pressure on
the push-button member applied in the axial direction from the outlet side in the
direction towards the inlet of the device and the axial displacement of the push-button
member together with the main sleeve towards the inlet, to a position, in which the
outflow openings slide out beyond the closure sleeve and the gasket, wherein, after
releasing pressure on the push-button element, the main sleeve, and thus the whole
device, automatically returns to the closed flow position as a result of the return
movement of the main sleeve to a sealed position by the gasket in the closure sleeve
under the action of the push-button spring.
[0020] According to the invention, preferably, a protection is provided against rotation
of the button with respect to the structural unit, composed of: the device body, the
closure sleeve and the rolling diaphragm, by means of cooperation of a guiding protrusion
located on the surface of the closure sleeve or the device body and guiding groove
disposed, preferably, on the inner surface of the push-button.
[0021] Additionally, in the preferred embodiment of the invention, a locking mechanism is
provided for locking the device in the opening flow position of a liquid from the
inlet to the outlet of the device, wherein the locking mechanism is in the form of
a plug-socket coupling mechanism with a plug unit and socket unit, which units are
respectively provided with locking protrusions or teeth which are adapted in shape
to cooperate with each other and arranged respectively on each of those units, wherein
the socket unit includes a crown with teeth, and the plug unit comprises locking tabs
or protrusions forming either structural components, or auxiliary elements of the
unit. Alternatively, the locking mechanism is in the form of a cam-slider coupling
mechanism provided with a guiding cam member in the form of a recess or shaped groove
and the guided member in the form of a slider or a resilient element both adapted
in shape to cooperate with the guiding member.
[0022] In a preferred embodiment of the invention the device locking mechanism in the form
of a plug-socket coupling mechanism includes a plug unit with the locking protrusions
in the form of one or more structural elements selected from the following: latching
protrusions of the latching sleeve, latching protrusion of the latching sleeve, toothlike
protrusions of the push-button or its toothed flange and/or pusher protrusions or
toothed flange of the main sleeve and cooperating with said plug unit the socket unit
having toothlike parts or teeths, wherein the socket unit includes a crown provided
with protrusions in the shape of crown teeth or toothlike portions of the crown, which
are adapted to cooperate, as well as adapted in shape and dimensions for entering
into locking engagement with respective latching protrusions, and with toothed protrusions
and/or pusher protrusions as auxiliary elements of the plug unit, preferably in the
form of auxiliary toothlike protrusions that are arranged on an inner surface of the
push-button member or in the form of auxiliary pusher protrusions arranged on the
main sleeve.
[0023] In a preferred alternative embodiment of the invention, the device locking mechanism
in the form of a cam-slider coupling mechanism comprises: a guiding element in the
form of a cam made as a cam recess or a shaped groove, manufactured as a groove on
the inner surface of the push-button member or as a shaped groove, preferably of cardioids
shape in a sleeve, mounted inside the device body, and
cooperating with said groove as a guided element, a sliding element in the form of:
a sleeve slider of the sleeve arranged inside the device body; a slider or a resilient
member on the main sleeve; or the guide protrusion, respectively, wherein, preferably,
the shaped groove includes a portion forming the guiding groove.
[0024] In a preferred further embodiment of the invention the device comprises a guiding
groove disposed on the inner side surface of said push-button member, whereas cooperating
with it guiding protrusion is disposed on the outer surface of the device body or
of an element joint to the device body and has a width smaller than the width of the
guiding groove, and further preferably, the ratio of the inner circumference dimension
of the cylindrical portion of the push-button to the width of the guiding protrusion
is greater than 40, and preferably greater than 120.
[0025] In a further preferred embodiment of the device according to the invention a lighting
element, preferably a LED, connected to a supplying battery is provided at that side
of the inlet end of the main sleeve which is directed towards the device inlet, whereas
in the device body a resilient contact is placed with a pusher biasing the pusher
spring in the direction towards the inlet when the main sleeve is moved by sliding
outside from the closure sleeve, after pressing the push-button member in the direction
towards the inlet and opening the flow between the inlet of the device and the outlet
of the main sleeve, which pusher causes simultaneously pressing the spring contact
against the battery and closing the electric circuit thus causing emission of light
by the LED, wherein the light beam is guided by an outflow stream of a liquid and
it illuminates the place to which the liquid flows.
Description of the Drawings
[0026] The object of the invention is shown in the embodiments in the figures of drawings,
in which fig. 1a, 1b show an axial section of the first embodiment of the invention
in the open flow and closed flow position, fig. 2a-2c - an axial section of the second
embodiment of the invention in the open flow and closed flow positions, fig. 2d-2e
- details of the second embodiment of the invention, schematically; fig. 3a-3b - an
axial section of the third embodiment of the invention in the open flow and closed
flow positions, fig. 4a-4b - an axial section of the fourth embodiment of the invention
in the open flow and closed flow positions, fig. 4c-4d - an axial section of the fifth
embodiment of the invention in the open flow and closed flow positions, 4e - details
of the fifth embodiment of the invention in an exploded perspective view, fig. 4f-4g
- details of a cam-slider locking assembly in a fourth and fifth embodiment of the
present invention, schematically, fig. 5a-5b - an axial section view of the sixth
embodiment of the invention in the open flow and closed flow positions, fig. 6a-6b
- an axial section of the seventh embodiment of the invention in the open flow and
closed flow positions, fig. 6c - details of a cam-slider locking assembly in a seventh
embodiment of the present invention, schematically, and fig. 7a-7b - an axial section
of the eighth embodiment of the invention in the open flow and closed flow positions.
Description of the embodiments of the invention
[0027] Successive preferred embodiments of the invention are shown in the fig. 1a-7b, wherein
similar or identical constructional elements in the figures of the drawings are designated
by the same reference numerals.
[0028] The valve pouring device according to the invention in a preferred embodiment, as
shown in fig. 1a, 1b, comprises an elongated body 9, preferably cylindrical, terminated
with a tip at one end in the form of a connection port, a stub pipe etc. for connecting
a flexible hose, and forming a liquid inlet. At the other end, into the body 9 extends
a closure sleeve 4 mounted fixedly in the body 9, inside which sleeve 4 the main sleeve
1 is arranged, wherein the main sleeve 1 is slidable relative to the closure sleeve
4 and the device body 9. The main sleeve 1 has an outlet end and an inlet end, facing
towards the liquid inlet and closed with a closure element 1b, wherein on the side
surface at its inlet end, placed in the body 9 and facing the liquid inlet, it is
provided with at least one, and preferably at least two outflow openings 1a, followed,
in the direction of the inlet end, by a circumferential groove, arranged on side surface
of the main sleeve 1 and provided with a gasket 6. Between the main sleeve 1 and the
closure sleeve 4, a sealing, in a preferred embodiment in the form of a sealing diaphragm
3, preferably a rolling diaphragm 3 and also a helical spring 2 of the push-button
member 2 are arranged. The sealing diaphragm 3 is mounted at one side in the recess
of the closure sleeve 4 and secured against falling out with a pressure bushing 17,
and on the other, opposite side it is mounted in a groove, formed in the main sleeve
1. The pressure bushing 17 biases the rolling diaphragm 3 in order to ensure proper
sealing. On the main sleeve 1, at the second end side thereof, i.e. the outlet end
thereof, an element 2 is non-rotatably mounted to start and shut off the liquid outflow
from the device, being a pressing button 2 in the form of the hollow push-button 2,
as shown in fig. 1a, b. Protection of the push-button 2 against rotation in relation
to the structural unit, composed of the device body 9, the closure sleeve 4 and the
rolling diaphragm 3, is performed by cooperation of the guiding protrusion 16, arranged
on the side surface of the closure sleeve 4 and the guiding groove 15, disposed on
the inner surface of the push-button 2. A purpose of the protection of the main sleeve
1 against rotation in relation to the closure sleeve 4 is to avoid twisting of the
rolling diaphragm 3.
[0029] The device according to the invention functions in such a way that the liquid flow
from the inlet to the outlet is opened by means of pressing the push-button 2 and
moving it towards the inlet, which button 2 is non-rotatably mounted on the main sleeve
1. This moves the main sleeve 1 in the same direction until its outflow openings or
outflow opening 1a are slided out from the closure sleeve 4 from the position sealed
by the gasket 6 and the rolling diaphragm 3, and the fluid communication between the
body 9 and the main sleeve 9 is opened, thus the communication between the liquid
inlet and outlet of the device, i.e. between the inlet and outlet ends of the device
is opened. After releasing pressure on the push-button 2 closing of the flow takes
place automatically under the action of the spring 5 of the push-button 2 and the
pressure of the liquid as well. Gasket 6 on the main sleeve 1 positions the main sleeve
1 in a rest position in which the gasket 6, preferably O-ring, is located inside the
closure sleeve 4, in its axial hole, at its end made in the form of an internal conical
end surface of the closure sleeve 4, wherein the seal 6 abuts against the conical
portion of the closure sleeve 4 while providing a seal.
[0030] A second preferred embodiment of the device for pouring in or discharging (pouring
out) according to the invention is shown in fig. 2a, 2b and 2c, wherein for similar
or the same structural elements the same reference numerals are appointed as in fig.
1a, b. The device in this embodiment comprises structural components that are similar
in structure and functions and are similarly positioned as in the embodiment shown
in fig. 1a, b, that is: the elongated body 9, the push-button member 2 with the button
spring 5, the closure sleeve 4, the gasket 6, the main sleeve 1 with outflow openings
1a and the closure element 1b and the sealing in the form of the rolling diaphragm
3.
[0031] Additionally, in this embodiment of the device, it is provided the locking of the
main sleeve 1 in the open flow position. Locking of the main sleeve 1 in the open
flow position, i.e. after pushing in the push-button 2 in the axial direction towards
the liquid inlet, similar as shown in fig. 1a, b, is realized by means of the locking
mechanism of the plug-socket type coupling mechanism, which in this embodiment includes
a crown 28, forming a socket unit, provided with the oblique teeth, which crown is
rotatably mounted on the main sleeve 1, in the section of the main sleeve 1 arranged
in the inner space limited by a substantially cylindrical internal wall of the push-button
2, by means of a retaining ring 38, wherein said crown 28 cooperates with the latching
sleeve 31 having a latching protrusion 32 which are the part of the plug unit of the
locking mechanism, in which sleeve 31 the closure sleeve 4 is positioned, wherein
in one variant of the invention, the latching sleeve 31 and closure sleeve 4 may form
one element or may be integrated with each other. The oblique teeth of the crown 28
are in the form of two side-by-side interconnected teeth, wider and narrower, forming
a single toothed portion of the crown 28. In the open flow position, the crown 28
maintains the main sleeve 1 in such manner that the outflow openings 1a are shifted
outside, beyond the closure sleeve 4 to allow free flow of liquid between the inlet
and outlet of the device, in cooperation with the catch 32 forming a part of a latching
sleeve 31. The latching sleeve 31 is in turn interposed between the device body 9
and the push-button 2 and surrounds from the outside one end of the closure sleeve
4, arranged inside it, the second end of which is arranged inside the body 9, wherein
the catch 32 forms the latching protrusion 32 that protrudes inwardly from the inside
surface of the latching sleeve 31 and has its end, facing the closure sleeve 1, terminated
with an angled chamfer having an angle close to the angle of inclination of the oblique
teeth of the crown 28, wherein the crown 28 is provided with wider and narrower teeth.
[0032] The push-button 2 is snap-fitted with a slight play on the main sleeve 1, in relation
to which it thus has capability of limited slide and very limited rotation.
[0033] The push-button 2 is further provided with inner oblique teethlike protrusions 33,
directed axially with respect to the main sleeve 1, which are the auxiliary constructional
components of the plug unit of the locking mechanism.
[0034] The push-button 2 is in the free position, that is without any pressure, moved away
from the crown 28 by means of an additional spring 30.
[0035] After pushing in the push-button 2 the oblique toothlike protrusions 33 pressing
the oblique teeth of the crown 28, that is its toothed parts, cause its axial displacement,
allowing the exit of the latch 32 from the slot 28a, and then turning the crown 28
until the side wall of the slot 28a abuts against the side of the toothlike protrusion
33. After releasing the pressure on the push-button 2 the additional spring 30 pushes
the button away from the crown 28, moving away toothlike protrusions 33 to allow further
rotation of the crown 28 until the catch 32 abuts against the side of the next tooth
of the crown 28 and locks the crown 28 in this position.
[0036] After pressing again the push-button 2, oblique toothlike protrusions 33 cause, by
pressing the oblique teeth of the crown 28, that is the toothed parts of the crown,
its axial displacement, to allow releasing the engagement of the oblique teeth of
the crown 28 from the catch 32 of the latching sleeve 31, and then turning the crown
28 around by an angle preventing their return to the previous position, in practice
that is the angle corresponding to the ratio of the circumferential dimension, that
is, the width of the narrower toothed portion of the crown 28 to the circumference
dimension of the crown 28 and releasing it from the locked position. Depending on
the size and the angle of inclination of the oblique engagement surfaces of the coupling,
an angle of the single rotation of the crown 28 is in the range from 1 degree to 45
degrees, more preferably from 2 to 15 degrees, and in particular 3 to 9 degrees.
[0037] Releasing the locked position, in turn, causes as a return movement of the main sleeve
1 in the direction towards the outlet (in fig. 2b to the left) under the action of
the spring 5 and the liquid pressure and closing the outflow openings 1a inside the
closure sleeve 4. A structure of the crown 28 is shown in more detailed manner in
fig. 2d, and the working principle of the locking mechanism in this embodiment is
explained schematically in fig. 2e, which shows the consecutive working positions
1-4 explained below:
Position 1 - in this position oblique toothlike protrusions 33 are spaced apart from
the crown 28 and the catch 32 is in the slot 28a of the crown;
Position 2 - in this position oblique toothlike protrusions 33 press on oblique, narrower
teeth of the crown 28 causing its movement in the direction of the closure sleeve
4, while the catch 32 is still in the slot of the crown 28 and does not allow for
its rotation. The slot having a width not less than the width of the catch 32, separates
consecutive modules consisting of a wider and a narrower tooth of the crown 28, that
form toothed parts of the crown 28. In the final moment, the catch 32 will be on the
outside of the crown 28 and the component force resulting from the action of oblique
toothlike protrusions 33 on the oblique, narrower teeth of the crown 28 will cause
rotation of the latter, until abutment of the longer side of the slot against a perpendicular
part of oblique toothlike protrusions 33;
Position 3 - after releasing the pressure on the push-button 2 the oblique wider teeth
of the crown 28 will engage the oblique part of the catch 32 and the component force
will cause rotation of the crown 28 until abutting against the side part of the catch
32 and retaining the crown 28 in this position, and at the same time stopping the
main sleeve 1 in this position. This is the position in which the flow is open;
Position 4 - next pressing the push-button 2 results in pushing of the oblique toothlike
protrusions 33 of the push-button 2 to the oblique wider teeth of the crown 28, causing
it to move in the direction of the closure sleeve 4, wherein the side of the catch
32 still locks the crown 28 and prevents its rotation. In the final moment, the catch
32 will be on the outside of the crown 28, that is the crown 28 will be beyond of
the catch 32, and the component force resulting from the action of oblique toothlike
protrusions 33 on the oblique, wider teeth of the crown 28 will cause its rotation,
until abutment of the side surfaces of the narrower teeth of the crown 28 against
the perpendicular part of oblique toothlike protrusions 33. After releasing the pressure
on the button 2, the oblique narrower teeth of the crown 28 will hit an oblique portion
of the catch 32 and the component force will cause rotation of the crown 28, until
its abutment against the side part of the catch 32, in which position the catch 32
will engage into the slot 28a of the crown 28, and the crown 28 will be able to perform
a freely slide movement, that is, the return movement thereof up to the point in which
the gasket 6 abuts against the closure sleeve 4, i.e. against the inner surface of
the closure sleeve 4. In this position, the flow is stopped.
[0038] In fig. 2d an indexing module MP is indicated, which means the distance between two
adjacent teeth sets of the crown 28 forming toothed parts thereof.
[0039] The utilization of the rolling diaphragm 3 as the sealing between the main sleeve
1 and the closure sleeve 4 provides a reliable sealing of the device against the outflow
of the filled liquid, and at the same time does not cause a large motion resistance
during sliding of both sleeves relative to each other, which allows easy opening and
closing of the flow without excessive effort of the operator, with only one hand.
[0040] In the next variant of the above described embodiment with reference to fig. 2a-2e,
on the main sleeve 1, the push-button 2 is slidably mounted having the side wall similar
to the cylinder with the toothed flange attached inside or duly integral with the
push-button. The toothed flange is provided with toothed, triangular in shape protrusions,
with an angle of inclination in the range of 30° - 60°, preferably 45°. The crown
28 is slidably and rotatably arranged on the main sleeve 1 and forms a socket unit
of the coupling mechanism, having spatially distributed triangular protrusions forming
the teeth having the profile matching the shape of protrusions of the toothed flange,
wherein the spacing pitch of the toothed protrusions on the toothed flange is equal
to or it is an integral multiple of the module MP of distribution of protrusions on
the crown 28. The protrusions of the crown 28, as shown in detail in the embodiment
in fig. 2d, are composed of segments, each of which has one triangular recess with
a width of about 1/2 of the module MP (pitch) and the second triangular recess with
a width of approximately 1/3 of the module MP (pitch). The slot with a width approximately
1/6 of the MP pitch is provided between individual segments. The crown 28 cooperates
by engagement with the latching protrusions 32 or catches 32 of the latching sleeve
31 causing after each pressing on the push-button 2, alternating, either blocking
the main sleeve 1 in an offset position, that is in the open flow position, or releasing
of the main sleeve 1 and its returning shifting movement up to the closed flow position.
The next movements during cooperation- of toothed protrusions 33 of the toothed flange
of the push-button 2 with the crown 28 and the catch 32 are shown in fig. 2e, as explained
above. In the case of this variant of the invention, fig. 2e shows respectively:
- 1. Resting position;
- 2. The toothlike protrusion 33 moves the crown to the point where the catch 32 slides
out of the slot 28a, and the distribution of forces results in turning of the crown
up to the abutment against the side of the catch 32;
- 3. After releasing the push-button, the crown abuts against the catch 32 and slides
on it until stabilizing the position in the recess;
- 4. After the following next pressing the push-button, the toothlike protrusion 33
moves the crown to the point where the catch 32 slides out from the triangular recess
having a width of about 1/2 of the MP pitch, and the distribution of forces results
in turning of the crown around, up to the abutment against the side of the toothlike
protrusion 33, while after releasing the pressure, the crown rotates yet about 1/6
of the (MP) pitch, until the catch 32 will come to the location opposite the slot
of the crown, allowing the free movement of the crown up to the point where the gasket
6 of the main sleeve 1 will stop it, leaning against the closure sleeve 4.
[0041] In each successive pressing and releasing cycle the crown rotates by an angle corresponding
to approximately 1/2 of the module MP (pitch).
[0042] The catch 32 has a width smaller than the width of the slot 28a of the crown 28 to
slide freely.
[0043] The height of the toothlike protrusion 33 is greater than the sum of the height of
the catch 32 and the depth of the recess of the wider teeth of the crown.
[0044] The pouring device of the invention in the following third, embodiment is shown in
fig. 3a, 3b, wherein all of similar or the same structural components as in the embodiment
shown in fig. 1a-b and 2a-e, are indicated with the same reference numbers. In relation
to the embodiment shown in fig. 1a, b the pouring device in this embodiment is further
provided with a locking mechanism, wherein, the device similarly to fig. 1a, b comprises
elongated body 9, preferably cylindrical, terminated at one end with a conically tapered
portion with the tip in the form of connection port, stub pipe, etc. for the elastic
hose, forming a liquid inlet inside which part the spring 50 is arranged. The locking
mechanism in this embodiment preferably comprises a sleeve of the crown 47 with the
teeth 47a of the locking mechanism, forming together the socket part of the locking
mechanism, similar structurally to the crown 28 shown in fig. 2d, which crown 47 cooperating
with the protrusions of the pusher 53, located on the main sleeve 1, which constitute
auxiliary structural components of the plug unit of the locking mechanism, in the
preferred embodiment, are in the form of a toothed flange 53. At the other side, the
closure sleeve 4 is inserted into the body 9 and secured therein, for example, forcedly
fitted, or by means of a threaded connection, and which closure sleeve 4 is mounted
on the main sleeve 1 and surrounds with a clearance the main sleeve 1, wherein the
main sleeve 1 is slidable with respect to the closure sleeve 4 and the body 9. The
main sleeve 1 has an outlet end being the outlet of the device and an inlet end closed
with the closure element 1b, facing towards the liquid inlet that is towards liquid
supply, wherein on the side surface of the main sleeve 1 close to its inlet end, facing
the body 9 and liquid inlet, at least one, and preferably at least two outflow openings
1a are provided, following which in the direction of the inlet end of the main sleeve
1 on its side surface, a circumferential groove is provided with a gasket 6. Further,
on- the inlet end of the main sleeve 1 facing towards the liquid inlet the protrusions
of the pusher 53 are provided, which are constructional components of the locking
mechanism and form the plug unit of the coupling mechanism, preferably the protrusions
are triangular in shape and with an angle of inclination 30-60 degrees, preferably
approximately 45 degrees.
[0045] On the inlet end side of the main sleeve 1, a bushing with a crown 47 of the locking
mechanism is slidably and rotatably mounted having crown teeth and a crown fixing
screw 51, which prevents sliding the bushing with the crown 47 out of the main sleeve
1. The bushing with the crown 47 together with its structural elements, in particular
crown teeth form a socket unit of the coupling mechanism, which the bushing with the
crown 47 has a profile configured respectively for cooperation with the catches 48a
of the latching sleeve 48, or in another variant of the ring 48 with the locking protrusions
48a, wherein the latching sleeve 48 with the catches 48a, and in another variant the
ring 48 with the locking protrusions are structural components of the plug unit of
the locking mechanism, while the protrusions of the pusher 53 form the auxiliary components
of the plug unit of the locking mechanism. The sleeve crown with the crown 47 has
a structure generally similar to that shown in fig. 2d with respect to the crown 28
in embodiment of fig. 2a, b and a flowchart diagram shown in fig. 2e refers to the
flowchart diagram of the sleeve with the crown 47 as well. The latching sleeve 48
is mounted within the body 9 and it is locked against a sliding movement by a shoulder
surface provided on the inner surface of the body 9 on the one side and the closure
sleeve 4 on the other side.
[0046] The locking mechanism further comprises a positioning pin 56 which determines the
correct angular positioning of the protrusions of the pusher 53 and the locking protrusions
48a of the latching sleeve 48 in relation to the teeth 47a of the sleeve with the
crown 47.
[0047] Between the main sleeve 1 and the closure sleeve 4, as was mentioned previously,
the sealing, in a preferred embodiment in the form of a sealing diaphragm 3, preferably
a rolling diaphragm 3 and also a helical spring 2 of the push-button 2 are arranged.
The rolling diaphragm 3 is forcedly fitted at one its side in the recess of the closure
sleeve 4, and at the opposite side in a groove formed in the main sleeve 1, while
the push-button 2 is non-displaceably mounted on the main sleeve 1, on the outlet
end side thereof (as shown in fig. 3a, b) .
[0048] The device in this embodiment according to the invention operates in such a way that
the flow from the inlet to the outlet is opened by pressing and axially moving the
push-button 2 towards the inlet, that button is non-displeceably mounted on the main
sleeve 1, which pressing causes moving the main sleeve 1 in the same direction, up
to sliding out of its outflow openings/ outflow opening 1a beyond the closure sleeve
4 from the position sealed by the gasket 6 and the rolling diaphragm 3, and thereby
opening fluid communication between the inner space of the body 9 and the inner opening
of the main sleeve 1, and thereby also between the liquid inlet and the outlet of
the device. Locking of the main sleeve 1 in the open flow position is realized by
its triangularly shaped protrusions of the pusher 53, pushing the sleeve with the
crown 47, slidably and rotatably mounted on the main sleeve 1, to a position remote
from the closure sleeve 4, whereby in this position the sleeve with the crown 47 in
cooperation with the latching protrusion 48a of the latching sleeve 48, or in another
variant, with the locking protrusion of the ring 48, maintains the main sleeve in
this position, allowing the free flow of the liquid between the inlet and the outlet.
After next pressing the push-button 2, as a result of pressure exerted by the oblique
surfaces of the pusher 53 on an oblique surface of the teeth 47a of the sleeve with
the crown 47, firstly the sleeve with the crown 47 is slid away from the latching
protrusion 48a of the latching sleeve 48, and then the sleeve with the crown 47 is
rotated by an angle corresponding approximately or equal to half of the MP pitch of
spacing of the teeth 47a of the sleeve with the crown 47, said indexing module is
the distance between two adjacent teeth 47a, similarly as shown in fig. 2e with respect
to the crown 28.
[0049] The locking mechanism operates in such a way that after releasing the pressure on
the push-button 2 the sleeve with the crown 47 pulled by the main sleeve 1 via a fixing
element, preferably a screw 51, located at its inlet end, returns to the rest position,
wherein the outflow openings 1a are closed by the closure sleeve 4, its shorter, oblique
surface allows a small rotation of about 1/2 of the pitch in order to allow the catch
or the latching protrusion 48a of the latching sleeve 48 to engage the slot of the
teeth 47a in the sleeve with the crown 47. The spring 5 by pressing via the push-button
2 onto the main sleeve 1 causes a movement of the main sleeve 1 in the direction towards
the outlet (in fig. 3b to the left) and closing of the outflow openings 1a inside
the closure sleeve 4. The movement is stopped after abutment of the gasket 6 against
the closure sleeve 4. The abutment of the gasket 6 against the closure sleeve 4 causes
sealing the outflow openings 1a and stopping the flow.
[0050] Fig. 4a, b show next, the fourth embodiment of the pouring device according to the
invention, wherein a compact arrangement of the device is presented, for use at low
pressures, below 1 bar, and in particular for disposable uses or of the expected short
term using, especially in the case where a low price criterion is important. In this
embodiment, the push-button 2 is connected non-displaceably, in snapped way, to the
main sleeve 1, the inlet end of which, closed by means of the closure element 1b,
is located with slight clearance within the closure sleeve 4. There is provided a
gasket 6 abutting against the inner conical surface of the closure sleeve 4, which
simultaneously closes the flow through the outflow openings 1a and does not allow
for the movement of the main sleeve in the opposite direction, i.e. away from the
device body 9. The closure sleeve 4 is forcedly fitted inside the device body 9, and
in addition there is provided a gasket 74 of the device body, which prevents leakages
while maintaining immovable position of the closure sleeve 4 inside the device body
9. The flexible feeding hose 78 is pushed onto the connector pipe 77, which is screwed
inside the device body 9. Pressing the flexible hose 78 against the wall of the body
9 results in a sealing of the whole assembly.
[0051] The device in this embodiment is also equipped with a locking mechanism for locking
the device in the open flow position, wherein in this embodiment, there is provided
the locking mechanism in the form of the cam-slider coupling mechanism, which mechanism
includes a recess, being a guiding cam mechanism, locking the position of the main
sleeve 1, preferably in the form of a cardioid cam with a shaped groove 75 having
the cardioid shape, which groove 75 functions partially as the guiding groove 15 in
such a way that it comprises a portion constituting the guiding groove 15. The locking
function of the device in the open flow position is carried out by means of a recess,
preferably in the said form of a cardioid groove 75. Said locking recess, preferably
the cardioid groove 75, in this embodiment is arranged on the inner cylindrical surface
of the push-button 2, and with the cardioid groove cooperates the guiding protrusion
16 located on the outer surface of the device body 9. In the simplest variant, a guiding
protrusion 16 travels along the section 15 of the cardioid groove 75, causing alternately
the locking of the push-button 2 and the associated main sleeve 1 in the open flow
position, in which the outflow openings 1a of the main sleeve 1 protrudes beyond the
closure sleeve 4, or releasing the lock of the main sleeve 1 and returning movement
of the latter back to the closed flow position, in which the gasket 6 abuts against
the inner conical surface of the closure sleeve 4. Such a structure can cause adverse
torsion of the rolling diaphragm 3, the maximum torsion of which should not exceed
3 deg, so it can be used only if the ratio of the circumference of the inner cylindrical
portion of the push-button 2 to the width of the guiding protrusion 16 is greater
than 120, for example while the diameter of the inner part of the push-button 2 is
of 25 mm the width of the guiding protrusion 16 should not be greater than 0.65 mm.
[0052] To avoid the problem caused by torsion of the rolling diaphragm 3 it is preferable
to use in the variant of the solution of the locking mechanism shown in fig. 4a, b,
in addition the sleeve 67 with the slider 67a and the recess in the form of a window
67b, as shown in a fifth embodiment in fig. 4c,d, whereas the sleeve 67 is disposed
with a play inside the body 9 and having possibility of rotation as well as linear
displacement, wherein that displacement is restricted by the window 67b in the sleeve
67 with the slider 67a, cooperating with the catch 4a being a part of the closure
sleeve 4 marked in fig. 4e. In such construction, the sleeve 67 with the slider 67a
perform rotation, whereas the guiding protrusion 16, preferably having a larger dimension
in the height direction, i.e. being higher than the slider 67a, arrests the push-button
2 in the position in which it is able to move by shifting but it cannot rotate, since
the guiding protrusion 16 arrests the push-button 2 against the rotation.
[0053] The operation of the device in the fifth embodiment is as follows, the slider 67a
of the sleeve 67 with the slider moves along the cardioid groove 75, at the end of
which the oblique side of the groove causes a slight rotation of the sleeve 67 with
the slider, and releasing of the push-button 2 results in an abutment of the slider
67a against the opposite side of the cardioid groove 75, as well as its continued
slight rotation up to stabilization in the groove, thus causing locking the main sleeve
1 in the open position, while the guiding protrusion 16 prevents turning torsion of
the push-button 2 and the main sleeve 1. To ensure reliable operation of the mechanism
it is preferred that the straight part of the groove 75 is deeper than the rest of
its profile, and the guiding protrusion 16 is higher than the slider 67a. After pressing
again the push-button 2, as a result of the pressure of the oblique side of the cardioid
groove 75 against the slider 67a the sleeve 67 with the slider is further turned around
and the button 2 is thus allowed to return to the rest position together with tight
closing of the outflow openings 1a of the main sleeve 1 by the gasket 6 that is pressed
against the closure sleeve 4. To increase a comfort it is recommended to use a spring
70, pushing the sleeve 67 with the slider away from the guiding protrusion 16.
[0054] To facilitate the assembling, the sleeve 67 with the slider 67a may be composed of
two parts, as shown in fig. 4e.
[0055] Fig. 4f shows the successive phases of the cooperation of the guiding protrusion
16 with the cardioid groove 75, and fig. 4g shows successive phases of the cooperation
of the slider 67a of the sleeve 67 with the slider with the cardioid groove 75 and
the guiding protrusion 16 with the part 15 of the cardioid groove 75.
[0056] Fig. 5a, b show a further, sixth embodiment of the device according to the invention,
which is similar to the embodiment shown in fig. 4c and 4d, however, with the different
locking mechanism, which is also a cam-slider type mechanism, as in the previous embodiment
of the pouring device and that comprises a slider 127 which is mounted on the main
sleeve 1 and the guiding element forming a cam part, is in the form of the sleeve
128 with the shaped groove 128a, in particular in the cardioid shape 128a, and said
sleeve is arranged with a slight clearance within the body 9 and is locked against
displacement by means of the protrusion 129 of the device body 9 at one side and by
means of the closure sleeve 4 at the other side. Elastic feeding hose 131 is pressed
on a suitably shaped inlet tip of the body 9 and tightened with the clamping nut 130.
Similarly as in the embodiment shown in fig. 4c, d, locking of the open flow position
of the device, where the outflow openings 1a of the main sleeve are shifted out beyond
the closure sleeve 4 is carried out by the movement of the slider 127, which is a
guided element of the locking mechanism, in the shaped groove 128a having a cardioid
shape, said movement is caused by pressing and axially shifting the push-button 2
in the direction towards the inlet of the device, whereas releasing of the lock takes
place after next pressing of the push-button 2 in the same direction and, thus caused
the displacement of the slider 127 within the cardioid groove 128a, forming the guiding
element of the locking mechanism, and the resulting return movement of the main sleeve
1 to the sealed position of its outflow openings 1a.
[0057] The working of the device in this embodiment is similar as in the case of the previously
described embodiment, the difference is in that the sleeve 128 with the cardioid groove
128a is a separate element rotatably and non-displaceably secured within the device
body 9. The slider 127 is mounted in the main sleeve 1 and its sliding along the cardioid
groove 128a forces alternately: stopping the main sleeve 1 in the open flow position
and allowing the flow without the need of continuous pressing on the push-button (fig.
5b) or releasing of the main sleeve 1 to allow the closing off the flow (fig. 5a)
.
[0058] Fig. 6a, b shows further, the seventh embodiment of the pouring device according
to the invention with a locking mechanism of the cam-slider type comprising modified,
in relation to the above-described embodiments, cam element in the form of the shaped
groove, that functions similarly to a cardioid groove as described above, with the
provision that by using the elastic element its operation takes place in three dimensions,
rather than in two dimensions as for the cardioid groove in the previous embodiments,
wherein the structure of the device in this embodiment is generally similar to the
embodiment shown in fig. 5a, b with the difference in that the modified arrangement
of the locking mechanism is used. The locking mechanism in this embodiment comprises
a locking sleeve 97 in which a shaped groove 97a is formed, which is the guiding member
of the locking mechanism constituting the modification of the cardioid groove, and
which is cam part of the cam-slider coupling mechanism, as described in previous embodiments,
and illustrated in more detail in fig. 6c, which the shaped groove 97a is formed by
a shaped recess in the locking sleeve 97, wherein the locking sleeve 97 is mounted
inside and within the body 9, between the closure sleeve 4 and the inlet end of the
body 9. In this case, the recess forming a shaped groove 97a is preferably a pass-through-recess
- passes through the whole thickness of the wall of the sleeve, which facilitates
the manufacture of the device, but it may be also in the form of a blind recess, i.e.
extending only on a portion of the wall thickness of the sleeve 97. The locking mechanism
also comprises a spring latch with the resilient member 98, which is a modified slider
part of the locking mechanism, and which has a convex (or protruding) part 98b with
four co-operating planes, namely: 1. A front plane inclined so as to allow pressing
it under the surface of the wall of the sleeve 97; 2. A slanted front plane arranged
in a way allowing its tilting in the plane perpendicular to the axis; 3. An inclined
rear plane - enabling engagement in the recess 97b of the shaped groove 97a, 4. A
flat plane allowing for a movement under the surface of the wall of the sleeve 97.
This special shape allows deflection in two dimensions: laterally - perpendicular
to the axis of the sleeve 97 and radially - in the direction of the axis of the sleeve
97, and which cooperates with the shaped groove 97a to lock the open flow position
of the device. The resilient member 98 of the latch is mounted at one its side in
the circumferential groove of the closure member 1b of the main sleeve 1, and with
the other end it enters into the shaped groove 97a in the locking sleeve 97 to form
a spring latch. Fig. 6c shows the movement of the resilient element in successive
working phases of the device during pressing the push-button 2, attached non-displaceably
to the main sleeve 1. The resilient member 98 of the latch, forming the guided member
of the locking mechanism, moves along the shaped recess 97a, preferably shaped groove
97a constituting the guiding element of the locking mechanism. In the first phase
the wall of the recess deflects it sideways i.e. to the side. After releasing of the
push-button 2 a convex portion 98b of the resilient member 98 falls into said specific
shaped recess 97b in the form of the shaped groove, that stops it there, and thus
stops the main sleeve 1 in an open flow position. Next pressing of the button 2 results
in a pushing the protruded part 98b of the resilient member 98, which forms the guided
slider element of the locking mechanism, under the wall of the locking sleeve 97.
The latch member 98 straightens and slides next to the shaped recess 97b, but still
inside the locking sleeve 97. This allows returning of the main sleeve 1 under influence
of the spring 5 to the rest position, i.e. position in which the gasket 6 bears against
the conical inner surface of the closure sleeve 4 and closes the flow through the
outflow openings 1a.
[0059] In further next, the eighth embodiment of the invention shown in fig. 7a, 7b, which
is structurally very similar to the embodiment shown in fig. 1a, b, because it contains
neither locking, nor positioning mechanism but, of course, in this embodiment the
locking mechanism according to one or more embodiments of the device of the invention
presented in the foregoing portion of the present description can also be used. In
this embodiment of the device, at the side of the inlet end of the main sleeve 1 facing
towards the inlet and closed by the closing element 1b in the closing element the
lighting element 148 is arranged, preferably a LED 148, connected to a power supply
battery 149, while in the device body 9 a resilient contact 152 is accommodated, having
a pusher 153 biasing the pusher spring 155 towards the inlet of the device during
forward movement of the main sleeve 1 beyond the closure sleeve 4 under the influence
of axial pressure on the push-button 2 from the sealed position of its outflow openings
1a sealed by the gasket 6 and the rolling diaphragm 3, after pushing the button 2
towards the inlet. Pressing the button 2 causes firstly opening of the flow between
inlet WL of the body 9 and outlet WL of the main sleeve 1 through the outflow openings
1a, and secondly it causes simultaneously biasing the resilient contact 152 against
the battery 149 and closing the electric circuit, and thus the emission of light from
the LED 148, wherein the light beam is conducted by a stream of liquid flowing out
from the outlet and it illuminates the place to which the liquid flows, for example
to the filled up container. A prerequisite condition in this case is the use of a
liquid transparent to LED light. After releasing the push-button 2 the main sleeve
1 is moved back under the action of the spring 5 of the button 2 towards the outlet,
thus closing the fluid communication and liquid outflow and at the same time it causes
releasing of the pressure on the resilient contact 152 and opening of the electrical
circuit of the LED 148. To open the circuit in the proper position a tie bar 154 of
the spring of the pusher can be additionally provided, which pulls the pusher 153
away from the resilient contact 152. The battery 149 is protected against contact
with the filled liquid through the gasket 151 of the battery. To ensure long-term
operation of the device it is preferably to use the battery with a long lifetime,
e.g. ER 14250 (3.6 V, 1200 mAh, the lifetime above 10 years).
[0060] The structure of the pouring device according to the invention presented in this
embodiment makes it possible to improve the functionality of the device thanks to
additional illumination of the fluid stream at the time of its outflow. It has both
aesthetic application - a backlight of the water stream disintegrating into individual
droplets gives a fantastic visual effect, and a practical one, for example during
filling up the liquid into the tank or container in the absence of a proper illumination
making impossible to check the level of the liquid in the tank. To obtain the described
effect the liquid have to be transparent.
[0061] The embodiments of the invention presented in the present description are not limiting
and according to the invention they can be combined in any way with each other and
used as any combination of solutions and configurations of the variants of embodiments
of the invention shown in the description, according to the appended claims.
1. (amended) A pouring device for filling or discharging of a liquid comprising: an elongated
body (9), preferably cylindrical, at one end terminated by a tip for connecting a
feeding stub pipe thereto, which tip constituting an inlet of the liquid and forming
the inlet end of the device, a main sleeve (1), a closure sleeve (4), which is arranged
co-axially with respect to the device body (9) and is mounted axially on the main
sleeve (1), in such a way that it surrounds the main sleeve (1) with a clearance,
wherein the main sleeve (1) is slidable relative to the closure sleeve (4) and the
body (9) and it comprises an outlet end on its side remote from the body (9) and an
inlet end on the side directed to the body (9) facing towards the liquid inlet, wherein
at the side of the inlet end the main sleeve (1) has on its side surface at least
one, and preferably, at least two outflow openings 1a or more outflow openings and,
further, a circumferential groove with a gasket (6) therein is provided on the side
surface of the main sleeve (1), while a member (2) for activating and shutting off
the liquid outflow from the device is located at the outflow end of the device, characterized in that the member (2) for activating the flow has a form of a pressing button in the form
of a push-button (2), located on the main sleeve (1) at its outlet end side, which
said push-button (2) is non-rotatably mounted thereon, and a sealing between the main
sleeve (1) and the closure sleeve (4), preferably in the form of a rolling diaphragm
(3), as well as a helical spring (5) of the push-button (2) are arranged, the device
is transposed to the open flow position by exerting pressure on the pushing member
(2) applied in the axial direction from the outlet side in the direction towards the
inlet of the device and the axial displacement of the push-button member (2) together
with the main sleeve (1) towards the inlet to the open flow position, of the device,
where the outflow openings (1a) of the main sleeve are shifted out beyond the closure
sleeve (4), wherein, after releasing pressure on the push-button element (2) the main
sleeve (1), and thus the whole device, automatically returns to the closed flow position
as a result of the return movement of the main sleeve (1) to a position sealed by
the gasket (6) in the closure tube (4) under the action of the push-button spring
(5).
2. The pouring device for filling or discharging of a liquid according to claim 1, characterized in that the protection is provided against rotation of the push-button (2) with respect to
the structural unit composed of: the device body (9), the closure sleeve (4) and the
rolling diaphragm (3), due to the cooperation of a guiding protrusion (16) located
on the surface of the closure sleeve (4) or the device body (9) and a guiding groove
(15) disposed, preferably, on the inner surface of the push-button (2).
3. The pouring device for filling or discharging of a liquid according to claims 1 or
2, characterized in that the locking mechanism for locking of the device in the liquid open flow position
from the inlet towards the outlet of the device is provided, wherein the locking mechanism
is in the form of a plug-socket coupling mechanism with a plug unit and a socket unit,
which units are respectively provided with locking protrusions or teeth, which are
adapted in shape to cooperate with each other, and which are arranged respectively
on each of those units, wherein the socket unit includes a crown (28, 47) with the
teeth, and the plug unit includes locking latches or protrusions, forming either structural
components, or auxiliary elements of the unit, or alternatively the locking mechanism
is in the form of a cam-slider coupling mechanism which is provided with a cam guiding
element in the form of a recess or a shaped groove (75, 97a, 128a) and a guided element
in the form of a slider (67a, 127) or a resilient member (98), both being adapted
in shape for cooperation with the guiding element.
4. The pouring device for filling or discharging a liquid according to any one of claims
1-3, characterized in that the locking mechanism in the form of a plug-socket coupling mechanism comprises a
plug unit with the locking protrusions in the form of one or more structural elements
selected from: latching protrusions (32) of the latching sleeve (31), a latching protrusion
(48a) of the latching sleeve (48), toothlike protrusions (33) of the push-button (2)
or its tooth flange and/or pusher protrusions (53) or toothed flange (53) of the main
sleeve (1), and cooperating with the plug unit, the socket unit having toothlike parts
or teeth, wherein the socket unit includes a crown (28, 47) provided with protrusions
in the form of crown teeth (28a, 47a) or toothlike portions of the crown (28), which
are adapted to cooperate as well as adapted in shape and dimensions for entering into
locking engagement with respective latching protrusions (32, 48a) and with toothed
protrusions (33) and/or protrusions of the pusher (53) as auxiliary elements of the
plug unit, preferably in the form of auxiliary toothlike protrusions (33) that are
arranged on an inner surface of the push-button member (2) or in the form of auxiliary
pusher protrusions of the pusher (53) arranged on the main sleeve (1).
5. The pouring device for filling or discharging a liquid according to any one of claims
1-3, characterized in that the locking mechanism in the form of a cam-slider coupling mechanism comprises: a
guiding element in the form of a cam made as a cam recess or a shaped groove (75,
97a, 128a), formed as a cardioid groove (75) in shape on the inner surface of the
push-button (2) or as a shaped groove (97a, 128a), preferably a cardioid one, in the
sleeve (97, 128) mounted inside the device body (9), and respectively, the mechanism
comprises cooperating with said grove as a guided element: a slider element (16, 67a,
98, 127) in the form of a slider (67a) of the sleeve (67), arranged inside the device
body (9), a slider (127) and/or a resilient member (98) on the main sleeve (1), or
the guiding protrusion (16), wherein, preferably, the shaped groove (75) includes
a portion forming the guiding groove (15).
6. The pouring device for filling or discharging a liquid according to any one of claims
1-5, characterized in that it comprises a guiding groove (15) arranged on the inner side surface of the push-button
(2) and the guiding protrusion (16) cooperating with it, that is disposed on the outer
surface of the device body (9) or of the sleeve (31) connected with the body (9) and
that has a width smaller than the width of the guiding groove (15).
7. The pouring device for filling or discharging a liquid according to any one of claims
1-6, characterized in that the ratio of the inner circumferential dimension of the cylindrical portion of the
push-button (2) to the width of the guiding protrusion (16) is greater than 40, and
preferably, greater than 120.
8. The pouring device for filling or discharging a liquid according to claim 5, characterized in that the cardioid groove (128a) is formed in the wall of the additional sleeve (128) that
is arranged inside the device body (9), while the slider (127) cooperating with it
is mounted in the main sleeve (1).
9. The pouring device for filling or discharging a liquid according to any one of claims
1-3, characterized in that a lighting element (148), preferably a LED (148), is provided at the side of the
inlet end of the main sleeve (1) which is directed to the device inlet, which element
is connected to a supplying battery (149), while in the device body (9) a resilient
contact (154) is placed with a pusher (153), biasing the pusher spring (155) in the
direction towards the inlet when the main sleeve (1) is moved by sliding outside from
the closure sleeve (4) after pressing the push-button (2) in the direction towards
the inlet and opening the flow between the inlet of the device and the outlet of the
main sleeve (1), which pusher causes simultaneously pressing the spring contact (152)
against the battery (149) and closing the electric circuit switching on the emission
of light by the LED (148), wherein the light beam is guided by outflow stream of the
liquid and illuminates the place to which the liquid flows.
1. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit, umfassend: einen länglichen,
vorzugsweise zylindrischen, Körper (9), der einerseits mit einem einen Flüssigkeitauslass
und einen Einlass der Vorrichtung bildenden Endstück für einen Versorgungsanschluss
versehen ist, eine Haupthülse (1), eine Schliesshülse (4), die koaxial gegenüber dem
Körper (9) und axial auf der Haupthülse (1) angeordnet ist, derart, dass es diese
Haupthülse (1) mit einem gewissen Spiel umgibt, wobei die Haupthülse (1) gegenüber
der Schliesshülse (4) und dem Körper (9) verschiebbar ist und auf ihrer dem Körper
(9) abgewandten Seite einen Auslass und auf ihrer dem Körper (9) zugewandten Seite
einen dem Flüssigkeitseinlass zugewandten Einlass aufweist, wobei die Haupthülse (1)
einlassseitig auf ihrer Mantelfläche mindestens eine, vorzugsweise mindestens zwei,
Ausgiessöffnungen (1a) oder mehrere Ausgiessöffnungen aufweist, und ferner auf der
Mantelfläche der Haupthülse (1) eine Umfangsnut mit einer Dichtung (6) angeordnet
ist und auslassseitig der Vorrichtung ein Betätigungs- und Absperrelement (2) zum
Betätigen und Absperren des Flüssigkeitsablaufs aus der Vorrichtung angeordnet ist,
dadurch gekennzeichnet, dass das Betätigungs- und Absperrselement (2) als ein Tastenelement in Form einer auslassseitig
auf der Haupthülse (1) angeordneten Taste (2) ausgebildet ist, welche Taste (2) auf
der Haupthülse (1) drehfest gelagert ist, und zwischen der Haupthülse (1) und der
Schliesshülse (4) eine, vorzugsweise als eine Rollmembrane (3) ausgebildete, Dichtung
und eine Schraubenfeder (5) der Taste (2) angeordnet sind, wobei die Vorrichtung in
eine Öffnungsstellung durch einen axial von der Auslassseite her in Richtung des Einlasses
auf die Taste (2) ausgeübten Druck und durch eine axiale Verschiebung dieser Taste
(2) und damit der Haupthülse (1) in Richtung des Einlasses in eine Öffnungsstellung,
in der die Ausgiessöffnungen (1a) der Haupthülse über die Schliesshülse (4) hinausverschoben
sind, wobei nach dem Loslassen des Tastenelements (2) die Haupthülse (1) und damit
auch die Vorrichtung in die Schliessstellung sebsttätig zurückbewegt werden, indem
die Haupthülse (1) in eine mittels der Dichtung (6) in der Schliesshülse (4) abgedichtete
Stellung unter Wirkung der Tastenfeder (5) zurückbewegt wird.
2. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach Anspruch 1, dadurch gekennzeichnet, dass die Taste (2) gegen Verdrehen gegenüber einer aus dem Körper (9), der Schliesshülse
(4) und der Rollmembrane (3) zusammengesetzten Baueinheit gesichert ist, indem ein
auf der Oberfläche der Schliesshülse (4) bzw. des Körpers (9) angeordneter Führungsvorsprung
(16) mit einer, vorzugsweise auf der Innenfläche des Tastenelements (2) angeordneten
Führungsnut (15) zusammenwirkt.
3. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass ein Arretiermechanismus zum Arretieren der Vorrichtung in der die Flüssigkeitsströmung
vom Einlass bis zum Auslass zulassenden Öffnungsstellung vorgesehen ist, wobei der
Arretiermechanismus als ein Einsteck-Aufnahme-Kopplungsmechanismus mit einer Einsteckeinheit
und einer Aufnahmeeinheit ausgebildet ist, die jeweils mit einander formschlüssig
zusammenwirkenden, auf jeder der genannten Einheiten angeordneten Arretiervorsprüngen
oder Zähnen versehen sind, wobei die Aufnahmeeinheit eine Krone (28, 47) mit Zähnen
und die Einsteckeinheit Bauteile oder Hilfsbauteile in Form von Arretiernasen oder
Vorsprüngen umfasst, oder alternativ der Arretiermechanismus als ein Nocken-Lenker-Kopplungsmechanismus
ausgebildet ist, der mit einem Führungsnockenelement in Form einer Ausnehmung oder
einer Formnut (75, 97a, 128a) sowie einem damit formschlüssig zusammenwirkenden geführten
Element in Form eines Lenkers (67a, 127) oder eines Federelements (98) versehen ist.
4. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach einem der Ansprüche 1-3,
dadurch gekennzeichnet, dass der als Einsteck-Aufnahme-Kopplungsmechanismus ausgebildete Arretiermechanismus die
Einsteckeinheit mit den Arretiervorsprüngen umfasst, welche Arretiervorsprünge als
ein oder mehrere Bauelemente aus Eingriffsvorsprüngen (32) einer Eingriffshülse (31),
einem Eingriffsvorsprung (48a) einer Eingriffshülse (48), Zahnvorsprüngen (33) der
Taste (2) bzw. deren Zahnflansch und/oder Vorsprüngen eines Stössels (53) bzw. eines
Zahnflansches (53) der Haupthülse (1) ausgewählt sind, und die mit der Einsteckeinheit
zusammenwirkende Aufnahmeeinheit mit zähnförmigen Teilen oder Zähnen umfasst, wobei
die Aufnahmeeinheit eine mit den als Zähne (28a, 47a) oder zahnförmige Teile ausgebildeten
Vorsprüngen versehene Krone (28, 47) umfasst, welche Vorsprünge hinsichtlich ihrer
Form und ihrer Abmessungen dazu eingerichtet sind, mit den jeweiligen Eingriffsvorsprüngen
(32, 48a) sowie mit den Zahnvorsprüngen (33) als Hilfselementen und/oder den Vorsprüngen
des Einsteckeinheitsstössels (53), vorzugsweise in Form der auf der Innenoberfläche
des Tastelements (2) angeordneten Hilfszahnvorsprünge (33) oder in Form der auf der
Haupthülse (1) angeordneten Hilfsvorsprünge des Stössels (53), eine Arretierkopplung
zu bilden.
5. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach einem der Ansprüche 1-3,
dadurch gekennzeichnet, dass der als Nocken-Lenker-Kopplungsmechanismus ausgebildete Arretiermechanismus ein Führungselement
in Form eines als eine Ausnehmung oder eine Formnut (75, 97a, 128a) ausgebildeten
Nockens umfasst, welche Formnut als eine Kardioidnut (75) auf der Innenoberfläche
der Taste (2) oder als eine, vorzugsweise kardioidförmige, Formnut (97a, 128a) in
einer innerhalb des Körpers (9) angeordneten Hülse (97, 128) ausgebildet ist, sowie
der Kopplungsmechanismus ein jeweils mit der genannten Nut zusammenwirkenden, das
geführte Element bildenden Lenkerelement (16, 67a, 98, 127a) in Form eines Lenkers
(67a) der innerhalb des Körpers (9) angeordneten Hülse (67), des Lenkers (127) bzw.
eines Federelements (98) auf der Haupthülse (1) bzw. eines Führungsvorsprungs (16),
wobei vorzugsweise die Formnut (75) einen die Führungsnut (15) bildenden Teil umfasst.
6. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach einem der Ansprüche 1-5,
dadurch gekennzeichnet, dass die Vorrichtung eine auf der Innenmantelfläche des Tastelements (2) angeordnete Führungsnut
(15) umfasst und der damit zusammenwirkende Führungsvorsprung (16) auf der Aussenfläche
des Körpers (9) oder der mit dem Körper (9) verbundenen Hülse (31) angeordnet ist,
und seine Breite kleiner als die Breite der Führungsnut (15) ist.
7. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach einem der Ansprüche 1-6,
dadurch gekennzeichnet, dass das Verhältnis zwischen dem Umfang des zylinderförmigen Innenteils der Taste (2)
und der Breite des Führungsvorsprungs (16) grösser 40, vorzugsweise grösser 120 ist.
8. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach Anspruch 5, dadurch gekennzeichnet, dass die Kardioidnut (128a) in der Wandung der innerhalb des Körpers (9) angeordneten
Hilfshülse (128) ausgebildet ist, und der damit zusammenwirkende Lenker (127) in der
Haupthülse (1) eingebaut ist.
9. Vorrichtung zum Ein- oder Ausgiessen einer Flüssigkeit nach einem der Ansprüche 1-3,
dadurch gekennzeichnet, dass auf der Seite des dem Einlass der Vorrichtung zugewandten Einlassess der Haupthülse
(1) ein Leuchtelement, vorzugsweise eine Leuchtdiode (148), angeordnet ist, welches
Leuchtelement mit einer Versorgungsbatterie (149) verbunden ist, während im Körper
(9) ein Federkontakt (152) mit einem Stössel (153) angeordnet ist, welcher Stössel
(153) nach dem Drücken der Taste (2) in Einlassrichtung und Freigeben der Strömung
zwischen dem Vorrichtungseinlass und dem Auslass der Haupthülse (1) bei der Ausschieben
der Haupthülse (1) über die Schliesshülse (4) hinaus die Stösselfeder (155) in Einlassrichtung
drückt und zugleich das Anpressen des Federkontakts (152) gegen die Batterie (149)
und Schliessen des Elektrokreises sowie Lichtausstrahlung der Leuchtdiode (148) bewirkt,
wobei der Lichtstrom durch den ablaufenden Flüssigkeitsstrom geführt wird und die
Stelle, zu dieser die Flüssigkeitsstrom fliesst, beleuchtet.
1. Dispositif pour verser ou déverser un liquide comportant: un corps oblong (9), préférentiellement
cylindrique, d'un côté terminé par un embout pour le raccordement d'alimentation constituant
l'entrée du liquide et formant une extrémité d'entrée du dispositif, un manchon principal
(1), un manchon de fermeture (4) qui est disposé de façon coaxiale par rapport au
corps (9) et qui est emmanché de façon axiale sur le manchon principal (1) de telle
manière qu'il entoure le manchon principal (1) avec un certain jeu, le manchon principal
(1) pouvant être déplacé en translation par rapport au manchon de fermeture (4) et
au corps (9) et présente une extrémité de sortie, sur son côté éloigné du corps (9)
et une extrémité d'entrée sur le côté orienté vers le corps (9), tournée dans la direction
de l'entrée du liquide, du côté de l'extrémité d'entrée, sur sa surface latérale le
manchon principal (1) présentant au moins une, préférentiellement deux ouvertures
de déversement (1a) ou plus d'ouvertures de déversement, et en outre, sur la surface
latérale du manchon principal (1) est située une rainure périphérique avec un joint
d'étanchéité (6), tandis que du côté de l'extrémité de déversement du dispositif est
situé un organe (2) pour l'activation et la fermeture de l'écoulement du liquide du
dispositif, caractérisé en ce que l'organe (2) pour l'activation de l'écoulement présente la forme d'un élément poussoir
en forme de bouton (2), situé sur le manchon principal (1) du côté de son extrémité
de sortie, lequel bouton (2) est fixé sur celui-ci de manière non-rotative, tandis
qu'entre le manchon principal (1) et le manchon de fermeture (4) est placé une garniture
d'étanchéité, avantageusement en forme de diaphragme à défilement (3), ainsi qu'un
ressort hélicoïdal (5) du bouton (2), le dispositif étant réglé jusqu'à la position
d'ouverture de l'écoulement en appliquant sur l'élément poussoir (2) une force d'appui
selon la direction axiale du côté de la sortie, dans la direction vers l'entrée du
dispositif et le déplacement en translation axial de cet élément poussoir (2), et
avec celui-ci du manchon principal (1) dans la direction de l'entrée, à la position
ouverte d'écoulement dans laquelle les ouvertures de déversement (1a) du manchon principal
(1) sort en saillie au delà du manchon de fermeture (4), la pression étant libérée
sur l'élément poussoir (2) suit le retour automatique du manchon principal (1), donc
du dispositif entier à la position fermé d'écoulement par un mouvement de retour du
manchon principal (1) à la position étanche à l'aide du joint d'étanchéité (6) dans
le tube de fermeture (4), sous l'action du ressort (5) du bouton.
2. Dispositif pour verser ou déverser un liquide selon la revendication 1, caractérisé en ce qu'une protection est prévue contre la rotation du bouton (2) par rapport à l'ensemble
de la structure composé du corps (9), du manchon de fermeture (4) et du diaphragme
à défilement (3), par la coopération d'un ergot de guidage (16), positionné sur la
surface du manchon de fermeture (4) ou bien du corps (9) et d'une rainure de guidage
(15) positionnée, avantageusement, sur la surface interne de l'élément poussoir (2).
3. Dispositif pour verser ou déverser un liquide selon la revendication 1 ou 2, caractérisé en ce qu'un mécanisme de verrouillage du dispositif en position ouverte d'écoulement du liquide
depuis l'entrée jusque la sortie du dispositif est prévu, le mécanisme de verrouillage
étant en forme d'un mécanisme de couplage mâle-femelle avec l'ensemble mâle et l'ensemble
femelle, qui sont respectivement munis d'ergots de blocage ou dents de forme adaptée
pour coopérer entre eux, situés respectivement sur chacun de ces ensembles, l'ensemble
femelle comprenant une couronne (28, 47) dentée, et l'ensemble mâle comprenant des
crans de blocage ou ergots, qui forment des composants de la structure ou des éléments
accessoires de l'ensemble, ou en alternative le mécanisme de verrouillage est en forme
d'un mécanisme de couplage came-coulisseau, pourvu d'un élément came de guidage ayant
la forme d'un évidement ou d'une rainure de contournage (75,97a, 128a), et adapté
par la forme pour coopérer avec ce dernier, un élément guidé en forme de coulisseau
(67a, 127) ou un élément élastique (98).
4. Dispositif pour verser ou déverser un liquide selon l'une des revendications 1 à 3,
caractérisé en ce que le mécanisme de verrouillage en forme d'un mécanisme de couplage mâle-femelle comprend
un ensemble mâle avec des ergots de blocage en forme d'un ou plusieurs éléments de
la structure choisis parmi: des ergots d'accrochage (32) du manchon d'accrochage (31),
un ergot d'accrochage (48a) du manchon d'accrochage (48), des ergots dentés (33) du
bouton (2) ou bien sa bride dentée et/ou ses ergots du poussoir (53) ou une bride
dentée (53) du manchon principal (1), ainsi que l'ensemble femelle coopérant avec
l'ensemble mâle et ayant des parties dentées ou dents, l'ensemble femelle comprenant
une couronne (28, 47) pourvue d'ergots en forme de dents (28a, 47a) de la couronne,
ou bien des parties dentées de la couronne (28), qui sont adaptées pour coopérer et
adaptées par leur forme et dimensions pour le couplage de blocage avec les ergots
d'accrochage respectifs (32, 48a), et avec les ergots dentés (33) et/ou les ergots
du poussoir (53) comme des éléments accessoires de l'ensemble mâle, avantageusement
en forme des ergots dentés (33) accessoires situés sur la surface intérieure du élément
poussoir (2) ou en forme des ergots du poussoir (53) accessoires situés sur le manchon
principal (1).
5. Dispositif pour verser ou déverser un liquide selon l'une des revendications 1 à 3,
caractérisé en ce que le mécanisme de verrouillage en forme d'un mécanisme de couplage came-coulisseau
comprend : un élément guidé en forme d'une came réalisée comme un évidement ou une
rainure de contournage (75,97a, 128a), réalisée comme une rainure en cardioïde (75)
sur la surface intérieure du bouton (2) ou comme une rainure de contournage (97a,
128a), avantageusement en cardioïde dans le manchon (97, 128) emmanché à l'intérieur
du corps (9) et le mécanisme comprend, comme élément guidé coopérant respectivement
avec ladite rainure: un élément coulisseau (16,67a,98,127), en forme de coulisseau
(67a) du manchon (67) placé à l'intérieur du corps (9), de coulisseau (127) ou bien
d'un élément élastique (98) sur le manchon principal (1), ou bien d'un ergot de guidage
(16), la rainure de contournage (75) comprenant, avantageusement, une partie constituant
la rainure de guidage (15).
6. Dispositif pour verser ou déverser un liquide selon l'une des revendications 1 à 5,
caractérisé en ce qu'il comprend une rainure de guidage (15), située sur la surface intérieure latérale
de l'élément poussoir (2) et l'ergot de guidage (16) coopérant avec cette rainure
est située sur la surface extérieure du corps (9) du dispositif ou du manchon (31)
associé avec le corps (9) et présente une largeur inférieure à celle de la rainure
de guidage (15).
7. Dispositif pour verser ou déverser un liquide selon l'une des revendications 1 à 6,
caractérisé en ce que la relation entre le périmètre de la partie cylindrique intérieure du bouton (2)
et la largeur de l'ergot de guidage (16) est supérieure à 40, et avantageusement supérieure
à 120.
8. Dispositif pour verser ou déverser un liquide selon la revendication 5, caractérisé en ce que la rainure en cardioïde (128a) est réalisé dans la paroi d'un manchon supplémentaire
(128) situé à l'intérieur du corps (9) du dispositif, tandis que le coulisseau (127)
coopérant avec celui-ci est agencé dans le manchon principal (1).
9. Dispositif pour verser ou déverser un liquide selon l'une des revendications 1 à 3,
caractérisé en ce que du côté de l'extrémité d'entrée du manchon principal (1) qui est orienté dans la
direction de l'entrée du dispositif est agencé un élément d'éclairage, avantageusement
une diode LED (148), lequel élément est branché à une batterie d'alimentation (149),
tandis que dans le corps (9) du dispositif est agencé un contact élastique (152) avec
un poussoir (153) sollicitant le ressort (155) du poussoir dans la direction de l'entrée
lors du mouvement de translation du manchon principal (1) au delà du manchon de fermeture
(4) après l'enfoncement du bouton (2) dans la direction de l'entrée et l'ouverture
de l'écoulement entre l'entrée du dispositif et la sortie du manchon principal (1),
lequel poussoir provoque en même temps une pression du contact à ressort (152) sur
la batterie (149) et la fermeture du circuit électrique ainsi que l'émission de la
lumière de la diode LED (148), le flux lumineux étant guidée par le flux d'ecoulement
du liquide et éclairant l'espace où s'écoule le liquide.